Abstract

Experimental research of qualitative efficiency indicators of the electric energy recovery process in the subway was carried out in the paper. It was found that in Dnipropetrovsk Metro there is a significant untapped reserve of energy-saving from the electric energy recovery in the range of 15...50% of energy expenditure for train operation. However, train traffic volumes, strongly variable nature of tractive electric energy consumption and lack of regenerative braking system in subway trains do not allow to realize this potential today. The prospect of buying new and upgrading existing cars requires prior research of efficiency indicators of regenerative energy from braking of trains in the subway. As a result of the study, it was found that the energy, generated by electric trains while electric braking has intermittent nature (8...20 seconds) with decreasing power and contains a considerable variable component (30...50%). Taking into account these indicators is relevant when selecting measures for the effective use of excess regenerative energy in subway trains since the return of unstabilized energy with such parameters to the primary energy system may make significant distortions and negatively affect operation of nontractive consumers.

Highlights

  • На базі експериментально визначених параметрів генерації енергії в режимі електричного гальмування було встановлено діапазон зміни якісних показників ефективності процесу рекуперації енергії в умовах метрополітену

  • Марикин и др. // ІІ Евроазиатская конференция по транспорту. – С-Пб: ЦНИИТ СЭТ, 2000. – С. 93

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Summary

Энергосберегающие технологии и оборудование

Power quality measurement system using FPGAs [Text] / S. 6. Chanxia, Zhu. Design and realization of regional power quality monitoring system [Text] / Zhu Chanxia, Hu Minqiang, Wu Zaijun, Dou Xiaobo, Zhao Shanglin // 2008 Third International Conference on Electric Utility Deregulation and Restructuring and Power Technologies, 2008. Power quality indexes for continue and discrete disturbances in a distribution area [Text] / H. Siahkali // 2008 IEEE 2nd International Power and Energy Conference, 2008. 9. Rendroyoko, I., Development of power quality control procedures and standards to control the connection of non-linear loads in electric power systems [Text] / I. H. Jopri // 2014 IEEE 8th International Power Engineering and Optimization Conference (PEOCO), 2014. Установлено, что в режиме реостатного торможения утилизируется 15...50 % энергии, затраченной на тягу поездов. Ключевые слова: метрополитен, электропотребление, электрическое торможение, рекуперация, электроэнергия, избыточная, показатели эффективности, энергосбережение

ПРОЦЕСУ РЕКУПЕРАЦІЇ ЕЛЕКТРОЕНЕРГІЇ
Діапазон коливання потужності рекуперації
Коефіцієнт форми потужності рекуперації

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